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Placing Grid-Forming Converters to Enhance Small Signal Stability of PLL-Integrated Power Systems

Chaoran Yang, Linbin Huang, Huanhai Xin, Ping Ju

2020IEEE Transactions on Power Systems248 citationsDOIOpen Access PDF

Abstract

The modern power grid features the high penetration of power converters, which widely employ a phase-locked loop (PLL) for grid synchronization. However, it has been pointed out that PLL can give rise to small-signal instabilities under weak grid conditions. This problem can be potentially resolved by operating the converters in grid-forming mode, namely, without using a PLL. Nonetheless, it has not been theoretically revealed how the placement of grid-forming converters enhances the small-signal stability of power systems integrated with large-scale PLL-based converters. This paper aims at filling this gap. Based on matrix perturbation theory, we explicitly demonstrate that the placement of grid-forming converters is equivalent to increasing the power grid strength and thus improving the small-signal stability of PLL-based converters. Furthermore, we investigate the optimal locations to place grid-forming converters by increasing the smallest eigenvalue of the weighted and Kron-reduced Laplacian matrix of the power network. The analysis in this paper is validated through high-fidelity simulation studies on a modified two-area test system and a modified 39-bus test system. This paper potentially lays the foundation for understanding the interaction between PLL-based (i.e., grid-following) converters and grid-forming converters, and coordinating their placements in future converter-dominated power systems.

Topics & Concepts

ConvertersPhase-locked loopGridElectronic engineeringElectric power systemSynchronization (alternating current)EngineeringComputer scienceControl theory (sociology)Power (physics)VoltageTopology (electrical circuits)Electrical engineeringMathematicsPhase noisePhysicsGeometryControl (management)Artificial intelligenceQuantum mechanicsMicrogrid Control and OptimizationPower Systems and Renewable EnergyIslanding Detection in Power Systems
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